Downregulation of Nodal inhibits metastatic progression in retinoblastoma

Laura Asnaghi1,2, David T White3, Lynn Yoon4

  • 1Department of Pathology, Johns Hopkins University, School of Medicine, Smith Building, 400 N. Broadway Avenue, Room 4029, Baltimore, MD, 21287, USA. LauraAsnaghi1@aol.com.

Insights

Nodal signaling inhibition significantly reduces retinoblastoma growth and metastasis. Targeting Nodal offers a potential new therapeutic strategy for this common childhood eye cancer.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Retinoblastoma is the most common pediatric intraocular malignancy.
  • The ACVR1C/SMAD2 pathway is upregulated in invasive retinoblastoma.
  • Nodal, an ACVR1C ligand, is investigated for its role in retinoblastoma progression.

Purpose of the Study:

  • To investigate the role of Nodal in retinoblastoma growth and metastasis.
  • To evaluate Nodal as a potential therapeutic target for retinoblastoma.

Main Methods:

  • Nodal inhibition using short hairpin RNAs (shRNAs) in retinoblastoma cell lines (WERI Rb1, Y79).
  • Assays used: CCK-8 for growth, Ki67 for proliferation, cleaved-caspase-3 and cleaved-PARP1 for apoptosis, transwell assay for invasion.
  • Orthotopic retinoblastoma model in zebrafish to assess metastatic dissemination.

Main Results:

  • Nodal inhibition reduced retinoblastoma cell growth by over 90% and inhibited proliferation.
  • Nodal knockdown led to increased apoptosis and significantly suppressed invasion in vitro (50-80%).
  • In zebrafish models, Nodal knockdown reduced metastatic dissemination by 34%.

Conclusions:

  • Nodal signaling is crucial for retinoblastoma growth, proliferation, and invasion.
  • Nodal represents a promising therapeutic target for retinoblastoma, potentially inhibiting both primary tumor growth and metastasis.

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